Hereditary spastic paraparesis: Disrupted intracellular transport associated with spastin mutation
- 28 October 2003
- journal article
- research article
- Published by Wiley in Annals of Neurology
- Vol. 54 (6) , 748-759
- https://doi.org/10.1002/ana.10757
Abstract
The commonest cause of hereditary spastic paraplegia (HSP) is mutation in the spastin gene. Both the normal function of spastin in the central nervous system and the mechanism by which mutation in spastin causes axonal degeneration are unknown. One hypothesis is that mutant spastin disrupts microtubule dynamics, causing an impairment of organelle transport on the microtubule network, which leads to degeneration in the distal parts of long axons. To study this neuronal and non‐neuronal cells were transfected with either wild type or mutant spastin proteins. We demonstrated evidence of a transient interaction of wild‐type spastin with microtubules, with resulting disassembly of microtubules, supporting a role for wild‐type spastin as a microtubule‐severing protein. Mutant spastin demonstrated an abnormal interaction with microtubules, colocalizing with but no longer severing microtubules. The abnormal interaction of mutant spastin with microtubules was demonstrated to be associated with an abnormal perinuclear clustering of mitochondria and peroxisomes, suggestive of an impairment of kinesin‐mediated intracellular transport. Our findings indicate that an abnormal interaction of mutant spastin with microtubules, which disrupts organelle transport on the microtubule cytoskeleton, is likely to be the primary disease mechanism in HSP caused by missense mutations in the spastin gene.Keywords
This publication has 37 references indexed in Scilit:
- Investigation of mitochondrial function in hereditary spastic paraparesisNeuroReport, 2003
- Mutations of SPG4 are responsible for a loss of function of spastin, an abundant neuronal protein localized in the nucleusHuman Molecular Genetics, 2003
- SPG20 is mutated in Troyer syndrome, an hereditary spastic paraplegiaNature Genetics, 2002
- Novel locus for autosomal dominant pure hereditary spastic paraplegia (SPG19) maps to chromosome 9q33–q34Annals of Neurology, 2002
- Hereditary Spastic Paraplegia SPG13 Is Associated with a Mutation in the Gene Encoding the Mitochondrial Chaperonin Hsp60American Journal of Human Genetics, 2002
- A New Locus for Autosomal Recessive Spastic Paraplegia Associated with Mental Retardation and Distal Motor Neuropathy, SPG14, Maps to Chromosome 3q27-q28American Journal of Human Genetics, 2000
- Visualization of the Peroxisomal Compartment in Living Mammalian Cells: Dynamic Behavior and Association with MicrotubulesThe Journal of cell biology, 1997
- Developmental trends of sleep‐disordered breathing in Prader‐Willi syndrome: The role of obesityAmerican Journal of Medical Genetics, 1995
- KIF1B, a novel microtubule plus end-directed monomeric motor protein for transport of mitochondriaCell, 1994
- Microtubule-dependent control of cell shape and pseudopodial activity is inhibited by the antibody to kinesin motor domain.The Journal of cell biology, 1993